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CDKL5 缺乏症模型大鼠中海马长时程增强增强,但 NMDA 受体和 AMPA 受体功能正常。

Enhanced hippocampal LTP but normal NMDA receptor and AMPA receptor function in a rat model of CDKL5 deficiency disorder.

机构信息

Centre for Discovery Brain Sciences, University of Edinburgh, Edinburgh, UK.

Simons Initiative for the Developing Brain, Patrick Wild Centre, University of Edinburgh, Edinburgh, UK.

出版信息

Mol Autism. 2024 Jun 14;15(1):28. doi: 10.1186/s13229-024-00601-9.

Abstract

BACKGROUND

Mutations in the X-linked gene cyclin-dependent kinase-like 5 (CDKL5) cause a severe neurological disorder characterised by early-onset epileptic seizures, autism and intellectual disability (ID). Impaired hippocampal function has been implicated in other models of monogenic forms of autism spectrum disorders and ID and is often linked to epilepsy and behavioural abnormalities. Many individuals with CDKL5 deficiency disorder (CDD) have null mutations and complete loss of CDKL5 protein, therefore in the current study we used a Cdkl5 rat model to elucidate the impact of CDKL5 loss on cellular excitability and synaptic function of CA1 pyramidal cells (PCs). We hypothesised abnormal pre and/or post synaptic function and plasticity would be observed in the hippocampus of Cdkl5 rats.

METHODS

To allow cross-species comparisons of phenotypes associated with the loss of CDKL5, we generated a loss of function mutation in exon 8 of the rat Cdkl5 gene and assessed the impact of the loss of CDLK5 using a combination of extracellular and whole-cell electrophysiological recordings, biochemistry, and histology.

RESULTS

Our results indicate that CA1 hippocampal long-term potentiation (LTP) is enhanced in slices prepared from juvenile, but not adult, Cdkl5 rats. Enhanced LTP does not result from changes in NMDA receptor function or subunit expression as these remain unaltered throughout development. Furthermore, Ca permeable AMPA receptor mediated currents are unchanged in Cdkl5 rats. We observe reduced mEPSC frequency accompanied by increased spine density in basal dendrites of CA1 PCs, however we find no evidence supporting an increase in silent synapses when assessed using a minimal stimulation protocol in slices. Additionally, we found no change in paired-pulse ratio, consistent with normal release probability at Schaffer collateral to CA1 PC synapses.

CONCLUSIONS

Our data indicate a role for CDKL5 in hippocampal synaptic function and raise the possibility that altered intracellular signalling rather than synaptic deficits contribute to the altered plasticity.

LIMITATIONS

This study has focussed on the electrophysiological and anatomical properties of hippocampal CA1 PCs across early postnatal development. Studies involving other brain regions, older animals and behavioural phenotypes associated with the loss of CDKL5 are needed to understand the pathophysiology of CDD.

摘要

背景

X 连锁基因细胞周期蛋白依赖性激酶样 5(CDKL5)的突变导致一种严重的神经发育障碍,其特征为早发性癫痫发作、自闭症和智力障碍(ID)。海马功能障碍与其他单基因形式的自闭症谱系障碍和 ID 的模型有关,并且通常与癫痫和行为异常有关。许多 CDKL5 缺乏症(CDD)患者存在无义突变和 CDKL5 蛋白完全缺失,因此在本研究中,我们使用 Cdkl5 大鼠模型来阐明 CDKL5 缺失对 CA1 锥体神经元(PC)的细胞兴奋性和突触功能的影响。我们假设在 Cdkl5 大鼠的海马体中会观察到异常的前突触和/或后突触功能和可塑性。

方法

为了能够对与 CDKL5 缺失相关的表型进行跨物种比较,我们在大鼠 Cdkl5 基因的外显子 8 中产生了一个功能丧失突变,并使用细胞外和全细胞电生理记录、生物化学和组织学的组合来评估 CDLK5 的缺失的影响。

结果

我们的结果表明,在幼年但不在成年的 Cdkl5 大鼠的切片中,CA1 海马体的长时程增强(LTP)增强。增强的 LTP 不是由于 NMDA 受体功能或亚基表达的变化引起的,因为这些在整个发育过程中保持不变。此外,在 Cdkl5 大鼠中,Ca 通透性 AMPA 受体介导的电流没有改变。我们观察到 CA1 PC 基底树突中的 mEPSC 频率降低伴随着棘突密度增加,但在用切片中的最小刺激方案评估时,没有发现沉默突触增加的证据。此外,我们发现在成对脉冲比上没有变化,这与 Schaffer 侧支到 CA1 PC 突触的正常释放概率一致。

结论

我们的数据表明 CDKL5 在海马突触功能中起作用,并提出了改变的细胞内信号而不是突触缺陷导致可塑性改变的可能性。

局限性

本研究集中在海马 CA1 PC 跨早期新生发育的电生理和解剖特性。需要涉及其他脑区、老年动物和与 CDKL5 缺失相关的行为表型的研究,以了解 CDD 的病理生理学。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/85d1/11177379/e830b5b8ba0d/13229_2024_601_Fig1_HTML.jpg

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